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地铁杂散电流干扰下埋地金属管道镁阳极排流技术研究 被引量:12
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作者 唐德志 陈宏健 +3 位作者 杜艳霞 付勇 谷坛 路民旭 《腐蚀科学与防护技术》 CAS CSCD 北大核心 2018年第6期577-584,共8页
利用现场实验和理论分析相结合的方法进行了地铁杂散电流干扰下埋地金属管道镁合金牺牲阳极排流技术的应用研究。结果表明,干扰状态下当管道电位正向不超过+1.5 VCSE时,镁合金牺牲阳极可以有效地抑制地铁杂散电流干扰,但其保护范围有限... 利用现场实验和理论分析相结合的方法进行了地铁杂散电流干扰下埋地金属管道镁合金牺牲阳极排流技术的应用研究。结果表明,干扰状态下当管道电位正向不超过+1.5 VCSE时,镁合金牺牲阳极可以有效地抑制地铁杂散电流干扰,但其保护范围有限,在几十米到一两百米之内,且其有效保护距离随着管道干扰水平的增加而减小。基于现场实验结果,同时结合理论推导,对镁合金牺牲阳极有效保护距离的预测方法进行探讨,初步建立了地铁杂散电流干扰下埋地金属管道镁合金牺牲阳极排流有效保护距离的预测模型,可供管道地铁杂散电流干扰的防护设计参考。 展开更多
关键词 地铁杂散电流干扰 油气管道 镁阳极排流 现场研究 有效保护距离 预测模型
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Mechanical analysis of effective pressure relief protection range of upper protective seam mining 被引量:10
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作者 Yin Wei Miao Xiexing +1 位作者 Zhang Jixiong Zhong Sijian 《International Journal of Mining Science and Technology》 SCIE EI CSCD 2017年第3期537-543,共7页
This paper analyzes the control mechanism of coal and gas outbursts and proposes the concept of an effective pressure relief protection range, based on the stress relief of the underlying coal-rock mass and the develo... This paper analyzes the control mechanism of coal and gas outbursts and proposes the concept of an effective pressure relief protection range, based on the stress relief of the underlying coal-rock mass and the development of a plastic zone. Also this study developed a stress change and fracture development model of the underlying coal-rock mass. In addition, the stress and depth of fracture of any point in the floor were deduced with the application of Maple Calculation Software. The specific engineering parameters of the Pingdingshan No. 12 colliery were applied to determine the relationship between the depth of fracture in the floor and the mining height. The pressure-relief principle of the underlying coal-rock mass was analyzed while varying the mining height of the upper protective seam. The findings indicate that as the depth of fracture in the floor increases, the underlying coal-rock mass experiences a limited amount of pressure relief, and the pressure relief protection range becomes narrower.Additionally, the stress distribution evolves from a ‘‘U" shape into a ‘‘V" shape. A 2.0 m mining height of protective seam situates the outburst-prone seam, Ji_(15), within the effective pressure relief protection range. The fracture development and stress-relief ratio rises to 88%, ensuring the pressure-relief effect as well as economic benefits. The measurement data show that: after mining the upper protective seam, the gas pressure of Ji_(15) dropped from 1.78 to 0.35 MPa, demonstrating agreement between the engineering application and the theoretical calculation. 展开更多
关键词 Upper protective seam Principle of pressure relief effective protection range Gas pressure
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